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个体. 中类晶体管式和持久记忆的形成

Switch-like and persistent memory formation in individual .

机构信息

Department of Physics, New York University, New York, United States.

Center for Neural Science, New York University, New York, United States.

出版信息

Elife. 2021 Oct 12;10:e70317. doi: 10.7554/eLife.70317.

Abstract

Associative learning allows animals to use past experience to predict future events. The circuits underlying memory formation support immediate and sustained changes in function, often in response to a single example. Larval is a genetic model for memory formation that can be accessed at molecular, synaptic, cellular, and circuit levels, often simultaneously, but existing behavioral assays for larval learning and memory do not address individual animals, and it has been difficult to form long-lasting memories, especially those requiring synaptic reorganization. We demonstrate a new assay for learning and memory capable of tracking the changing preferences of individual larvae. We use this assay to explore how activation of a pair of reward neurons changes the response to the innately aversive gas carbon dioxide (CO). We confirm that when coupled to CO presentation in appropriate temporal sequence, optogenetic reward reduces avoidance of CO. We find that learning is switch-like: all-or-none and quantized in two states. Memories can be extinguished by repeated unrewarded exposure to CO but are stabilized against extinction by repeated training or overnight consolidation. Finally, we demonstrate long-lasting protein synthesis dependent and independent memory formation.

摘要

联想学习使动物能够利用过去的经验来预测未来的事件。支持记忆形成的回路支持即时和持续的功能变化,通常是对单个示例的响应。幼虫是记忆形成的遗传模型,可以在分子、突触、细胞和回路水平上同时进行访问,但现有的幼虫学习和记忆行为测定方法不能针对单个动物,而且很难形成持久的记忆,尤其是那些需要突触重组的记忆。我们展示了一种新的学习和记忆测定方法,能够跟踪单个幼虫不断变化的偏好。我们使用该测定方法来探讨一对奖励神经元的激活如何改变对天生令人厌恶的气体二氧化碳(CO)的反应。我们证实,当与 CO 以适当的时间顺序呈现时,光遗传学奖励会减少对 CO 的回避。我们发现学习是开关式的:全有或全无,并且在两种状态下量化。可以通过反复暴露于未奖励的 CO 来消除记忆,但通过反复训练或夜间巩固可以稳定记忆以防遗忘。最后,我们证明了依赖和不依赖蛋白质合成的长期记忆形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/732a/8510578/017b2a0ee31b/elife-70317-fig1.jpg

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